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Modification of low-density polyethylene based activated carbon using titanium dioxide for carbon monoxide and hydrocarbon adsorption

机译:用二氧化钛进行二氧化碳和烃吸附的低密度聚乙烯基活性炭的改变

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Carbon monoxide (CO) and hydrocarbon (HC) gasses are produced from the motor vehicle. This type of gasses is so dangerous for human and environment. Adsorption is one of the main methods for air purification systems. Pollutant adsorption using activated carbon is the best option because of its cost-effective and high possibility to remove pollutant components. Utilization of plastic waste as a raw material for activated carbon (AC) production continues to be developed. LDPE wastes could be considered as a favorable precursor because containing a high percentage of carbon. Surface modification of AC was done through metal oxide impregnation. TiO_2 was used to increase its affinity towards CO and HC. The effects of the adsorption conditions such as adsorption tube length (3 cm, 4 cm, and 5 cm) were examined. This tube was connected to the vehicle exhaust pipe and gas analyzer on the other side. TiO_2 impregnation was successful in increasing the surface area of AC up to 370.86 m~2/g. Adsorption efficiency was achieved up to 74.83% and 67.10% for CO and HC respectively. The results showed that modification using TiO_2 was effective to increase the adsorption capability of AC.
机译:一氧化碳(CO)和烃(HC)气体由机动车辆生产。这种类型的气体对于人类和环境非常危险。吸附是空气净化系统的主要方法之一。使用活性炭的污染物吸附是最佳选择,因为其具有成本效益和高可能去除污染物组分。将塑料废物的利用作为活性炭(AC)生产的原料继续开发。由于含有高百分比的碳,可以将LDPE废物视为有利的前体。通过金属氧化物浸渍完成AC的表面改性。 TiO_2用于增加其对CO和HC的亲和力。检查吸附条件如吸附管长度(3cm,4厘米和5cm)的影响。该管在另一侧连接到车辆排气管和气体分析仪。 TiO_2浸渍成功地增加了高达370.86m〜2 / g的表面积。对CO和HC的吸附效率可达74.83%和67.10%。结果表明,使用TiO_2的改性是有效增加AC的吸附能力。

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